IP Library Granted Patent US 9,888,887
Granted Patent B2
US 9,888,887 · App. 14/819,557 · Granted Feb 13, 2018

X-ray diagnostic apparatus and X-ray diaphragm thereof

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Quick Facts
Patent No.
US 9,888,887
App. No.
14/819,557
Granted
Feb 13, 2018
Kind
B2
Abstract

An X-ray diagnostic apparatus according to the present embodiment includes: an X-ray tube which generates X-rays to be irradiated at an object; an X-ray diaphragm which houses an X-ray shielding member forming an irradiation aperture, through which the X-rays pass, along a side surface of the X-ray tube; an X-ray detector which detects X-rays passing through the object; and an image data generation circuitry which generates image data based on the X-rays detected by the X-ray detector.

Claims (36)

1. An X-ray diagnostic apparatus, comprising:

an X-ray tube configured to generate X-rays to be irradiated at an object;

an X-ray diaphragm configured to house X-ray shielding members forming an irradiation aperture, through which the X-rays pass, along a side surface of the X-ray tube;

an X-ray detector configured to detect X-rays passing through the object; and

image data generation circuitry configured to generate image data based on X-rays detected by the X-ray detector, wherein

the irradiation aperture is formed by opening/closing the X-ray shielding members,

the X-ray shielding members include at least one pair of X-ray shielding members, the X-ray shielding members constituting the at least one pair of X-ray shielding members being disposed opposite the irradiation aperture to each other, and

each of the X-ray shielding members constituting the at least one pair of X-ray shielding members is divided along a direction of opening/closing the irradiation aperture into a plurality of divisions.

2. An X-ray diagnostic apparatus, comprising:

an X-ray tube configured to generate X-rays to be irradiated at an object;

an X-ray diaphragm configured to fold and house X-ray shielding members forming an irradiation aperture through which the X-rays pass;

an X-ray detector configured to detect X-rays passing through the object; and

image data generation circuitry configured to generate image data based on X-rays detected by the X-ray detector, wherein

the irradiation aperture is formed by opening/closing the X-ray shielding members,

the X-ray shielding members include at least one pair of X-ray shielding members, the X-ray shielding members constituting the at least one pair of X-ray shielding members being disposed opposite the irradiation operation to each other, and

each of the X-ray shielding members constituting the at least one pair of X-ray shielding members is divided along a direction of opening/closing the irradiation aperture into a plurality of divisions.

3. The X-ray diagnostic apparatus according to claim 1 , wherein the X-ray diaphragm retracts the divisions of each X-ray shielding member in a horizontal direction relative to a direction of opening/closing the irradiation aperture, and folds and houses the divisions of each X-ray shielding member on the side surface of the X-ray tube.

4. The X-ray diagnostic apparatus according to claim 2 , wherein the X-ray diaphragm retracts the divisions of each X-ray shielding member in a horizontal direction relative to a direction of opening/closing the irradiation aperture, and folds and houses the divisions of each X-ray shielding member on the side surface of the X-ray tube.

5. The X-ray diagnostic apparatus according to claim 1 , wherein the X-ray diaphragm retracts the divisions of each X-ray shielding member in a horizontal direction relative to a direction of opening/closing the irradiation aperture, and houses the divisions of each X-ray shielding member in a direction perpendicular to the direction of opening/closing the irradiation aperture.

6. The X-ray diagnostic apparatus according to claim 2 , wherein the X-ray diaphragm retracts the divisions of each X-ray shielding member in a horizontal direction relative to a direction of opening/closing the irradiation aperture, and houses the divisions of each X-ray shielding member in a direction perpendicular to the direction of opening/closing the irradiation aperture.

7. The X-ray diagnostic apparatus according to claim 1 , wherein adjacent surfaces of the divisions of each X-ray shielding member of the X-ray diaphragm are formed obliquely to an opening/closing direction of the irradiation aperture.

8. The X-ray diagnostic apparatus according to claim 2 , wherein adjacent surfaces of the divisions of each X-ray shielding member of the X-ray diaphragm are formed obliquely to an opening/closing direction of the irradiation aperture.

9. The X-ray diagnostic apparatus according to claim 1 , wherein adjacent surfaces of the divisions of each X-ray shielding member of the X-ray diaphragm are formed in a stepped shape.

10. The X-ray diagnostic apparatus according to claim 2 , wherein adjacent surfaces of the divisions of each X-ray shielding member of the X-ray diaphragm are formed in a stepped shape.

11. The X-ray diagnostic apparatus according to claim 1 , wherein a section of each X-ray shielding member of the X-ray diaphragm located on a side on which the X-rays are irradiated is formed as a surface perpendicular to a direction of opening/closing the irradiation aperture.

12. The X-ray diagnostic apparatus according to claim 2 , wherein a section of each X-ray shielding member of the X-ray diaphragm located on a side on which the X-rays are irradiated is formed as a surface perpendicular to a direction of opening/closing the irradiation aperture.

13. The X-ray diagnostic apparatus according to claim 1 , wherein

the X-ray diaphragm includes driving circuitry configured to drive the divisions of each X-ray shielding member, and

the driving circuitry drives the divisions of each X-ray shielding member as single bodies and shields a part of the irradiation aperture by the divisions of each X-ray shielding member.

14. The X-ray diagnostic apparatus according to claim 2 , wherein

the X-ray diaphragm includes a driving circuitry configured to drive the divisions of the X-ray shielding members, and

the driving circuitry drives the divisions of each X-ray shielding member as single bodies and shields a part of the irradiation aperture by the divisions of each X-ray shielding member.

15. An X-ray diaphragm which forms an X-ray irradiation field, to be irradiated with X-rays, by opening/closing an irradiation aperture through which the X-rays pass, the X-ray diaphragm comprising X-ray shielding members, wherein

the X-ray shielding members include at least one pair of X-ray shielding members, the X-ray shielding members constituting the at least one pair of X-ray shielding members being disposed opposite the irradiation aperture to each other,

each of the X-ray shielding members constituting the at least one pair of X-ray shielding members is divided along a direction of opening/closing the irradiation aperture into a plurality of divisions, and

when the irradiation aperture is opened, the divisions of the X-ray shielding members are housed along a side surface along which the X-rays are irradiated.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038926/0365 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2015
From: KOJIMA, TSUYOSHI; SATO, YOSHIYUKI; SHINODA, KATSUAKI; OOIE, SHINSUKE
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 036265/0731 →